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Spectral Normalization and Fusion of Optical Sensors for the Retrieval of BRDF and Albedo: Application to VEGETATION, MODIS, and MERIS Data Sets

机译:用于检索BRDF和反照率的光学传感器的光谱归一化和融合:在VEGETATION,MODIS和MERIS数据集中的应用

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This paper aims at demonstrating the possibility of merging data from various medium-resolution spaceborne sensors to produce a consistent time series of surface bidirectional reflectance distribution function (BRDF) and albedo products. The spectral, directional, temporal, and spatial aspects of the multisensor fusion are presented. Emphasis is then given on the spectral normalization for the fusion of Medium Resolution Imaging Spectrometer Instrument (MERIS) data with Moderate Resolution Imaging Spectroradiometer (MODIS) and VEGETATION (VGT) data. Two methods are evaluated: a simple statistical method, which relies on a linear regression using all the available spectral bands, and a more innovative method called the spectral mode method, which is based on the restitution of the surface spectral signature by a combination of universal spectral functions. Analysis with Airborne Visible/Infrared Imaging Spectrometer (AVIRIS) hyperspectral data and satellite products reveals that the spectral mode method is more efficient. This approach is used to merge top-of-canopy bidirectional reflectances from MERIS and VGT for the restitution of BRDF and albedo over a subset of West Africa. Compared to the products obtained with MERIS alone, the fusion with VGT demonstrates an improvement of the spatial coverage and a reduction of product uncertainty by about a third
机译:本文旨在证明合并来自各种中等分辨率星载传感器的数据以产生一致的表面双向反射率分布函数(BRDF)和反照率产品时间序列的可能性。提出了多传感器融合的光谱,方向,时间和空间方面。然后重点介绍了光谱归一化,以融合中分辨率成像光谱仪(MERIS)数据与中分辨率成像光谱仪(MODIS)和VEGETATION(VGT)数据。对两种方法进行了评估:一种简单的统计方法,该方法依靠使用所有可用光谱带的线性回归;另一种创新的方法称为光谱模式方法,该方法基于通过结合通用光谱重建表面光谱特征的方法频谱函数。使用机载可见/红外成像光谱仪(AVIRIS)高光谱数据和卫星产品进行的分析表明,光谱模式方法更为有效。此方法用于合并来自MERIS和VGT的冠层顶部双向反射,以恢复部分西非的BRDF和反照率。与仅使用MERIS获得的产品相比,与VGT的融合显示出空间覆盖范围的改善,产品不确定性降低了约三分之一

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